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氧化甾醇结合蛋白的不同形式。结合动力学与稳定性。

Different forms of the oxysterol-binding protein. Binding kinetics and stability.

作者信息

Kandutsch A A, Taylor F R, Shown E P

出版信息

J Biol Chem. 1984 Oct 25;259(20):12388-97.

PMID:6490620
Abstract

Based upon measurements of the sedimentation coefficient and the Stokes radii, three forms of the oxysterol-binding protein were identified. The unliganded binding protein was the largest (7.7 S, Stokes radius = 71.6 A, Mr = 236,000) was relatively asymmetric (f/f0 = 1.7), and was composed of at least three subunits. Binding of 25-hydroxycholesterol was associated with a reduction in the size of the protein (7.5 S, Stokes radius = 50 A, Mr approximately 169,000) and an increase in symmetry (f/f0 = 1.4), due to the loss of a subunit of Mr approximately 67,000. At pH 6 or lower, the Mr = 169,000 sterol-protein complex was altered so that reversible dissociation to give a smaller (4.2 S, Stokes radius = 53 A, Mr = 97,000) more asymmetric (f/f0 = 1.8) sterol-protein complex occurred when it was sedimented in a sucrose gradient buffered at pH 7.4 containing 0.3 M KCl and 2.5 M urea. Irreversible dissociation of the 7.5 S, Mr = 169,000 form to a 4.2 S form occurred spontaneously when the complex in whole cytosol buffered at pH 7.8 was allowed to stand overnight at 0 degree C, or when the partially purified complex was incubated at pH 5.5 at 0 degree C for several days. The partially purified, unliganded binding protein was unstable at 0 degree C (approximately 75% loss of binding activity in 24 h) whereas the liganded protein was stable for 7 days at 0 degree C although irreversible conversion to a 4.2 S form occurred under some conditions. Rates of sterol binding and dissociation were increased in the presence of 2.5 M urea at pH 7.4 or when the pH was lowered to 5.5 Kd values were not greatly altered under the various incubation conditions.

摘要

根据沉降系数和斯托克斯半径的测量结果,鉴定出了三种形式的氧化甾醇结合蛋白。未结合配体的结合蛋白最大(7.7 S,斯托克斯半径 = 71.6 Å,Mr = 236,000),相对不对称(f/f0 = 1.7),且由至少三个亚基组成。25-羟基胆固醇的结合伴随着蛋白质大小的减小(7.5 S,斯托克斯半径 = 50 Å,Mr约为169,000)和对称性的增加(f/f0 = 1.4),这是由于一个Mr约为67,000的亚基丢失所致。在pH 6或更低时,Mr = 169,000的甾醇-蛋白质复合物发生改变,以至于当它在含有0.3 M KCl和2.5 M尿素、pH 7.4缓冲的蔗糖梯度中沉降时,会发生可逆解离,产生一个更小(4.2 S,斯托克斯半径 = 53 Å,Mr = 97,000)、更不对称(f/f0 = 1.8)的甾醇-蛋白质复合物。当pH 7.8缓冲的全细胞溶胶中的复合物在0℃下静置过夜,或者部分纯化的复合物在pH 5.5、0℃下孵育数天时,7.5 S、Mr = 169,000的形式会自发地不可逆解离为4.2 S形式。部分纯化的未结合配体的结合蛋白在0℃下不稳定(24小时内结合活性约损失75%),而结合了配体的蛋白在0℃下可稳定7天,尽管在某些条件下会不可逆地转化为4.2 S形式。在pH 7.4存在2.5 M尿素时或pH降至5.5时,甾醇结合和解离的速率会增加,在各种孵育条件下Kd值变化不大。

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